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Towards Development of an Edible Vaccine against Bovine Pneumonic Pasteurellosis Using Transgenic White Clover Expressing a Mannheimia haemolytica A1 Leukotoxin 50 Fusion Protein

机译:致力于开发一种抗牛肺炎巴氏杆菌病的食用疫苗该转基因白三叶草表达溶血曼海姆氏菌A1白细胞毒素50融合蛋白

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摘要

Development of vaccines against bovine pneumonia pasteurellosis, or shipping fever, has focused mainly on Mannheimia haemolytica A1 leukotoxin (Lkt). In this study, the feasibility of expressing Lkt in a forage plant for use as an edible vaccine was investigated. Derivatives of the M. haemolytica Lkt in which the hydrophobic transmembrane domains were removed were made. Lkt66 retained its immunogenicity and was capable of eliciting an antibody response in rabbits that recognized and neutralized authentic Lkt. Genes encoding a shorter Lkt derivative, Lkt50, fused to a modified green fluorescent protein (mGFP5), were constructed for plant transformation. Constructs were screened by Western immunoblot analysis for their ability to express the fusion protein after agroinfiltration in tobacco. The fusion construct pBlkt50-mgfp5, which employs the cauliflower mosaic virus 35S promoter for transcription, was selected and introduced into white clover by Agrobacterium tumefaciens-mediated transformation. Transgenic lines of white clover were recovered, and expression of Lkt50-GFP was monitored and confirmed by laser confocal microscopy and Western immunoblot analysis. Lkt50-GFP was found to be stable in clover tissue after drying of the plant material at room temperature for 4 days. An extract containing Lkt50-GFP from white clover was able to induce an immune response in rabbits (via injection), and rabbit antisera recognized and neutralized authentic Lkt. This is the first demonstration of the expression of an M. haemolytica antigen in plants and paves the way for the development of transgenic plants expressing M. haemolytica antigens as an edible vaccine against bovine pneumonic pasteurellosis.
机译:针对牛肺炎巴氏杆菌病或运输热的疫苗的开发主要集中于溶血曼海姆氏菌A1白细胞毒素(Lkt)。在这项研究中,研究了在饲用植物中表达Lkt用作可食用疫苗的可行性。制备了溶血莫拉氏菌Lkt的衍生物,其中疏水性跨膜结构域被去除。 Lkt66保留了其免疫原性,并且能够在识别并中和真实Lkt的兔子中引发抗体应答。构建编码较短Lkt衍生物Lkt50的基因,将其与修饰的绿色荧光蛋白(mGFP5)融合,用于植物转化。通过Western免疫印迹分析筛选构建物在烟草中农杆菌浸润后表达融合蛋白的能力。选择融合花椰菜花叶病毒35S启动子进行转录的融合构建体pBlkt50-mgfp5,并通过根癌农杆菌介导的转化将其引入白三叶草。回收了白三叶草的转基因品系,并通过激光共聚焦显微镜和Western免疫印迹分析监测并证实了Lkt50-GFP的表达。在植物材料在室温下干燥4天后,发现Lkt50-GFP在三叶草组织中是稳定的。来自白三叶草的含有Lkt50-GFP的提取物能够在兔子中诱导免疫反应(通过注射),并且兔抗血清识别并中和了真实的Lkt。这是首次证明溶血支原体抗原在植物中的表达,并为表达溶血支原体抗原的转基因植物的开发铺平了道路,作为抗牛肺炎巴氏杆菌病的可食用疫苗。

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